High-efficiency chemical formulations developed for complex municipal and industrial water treatment systems.
Established in 2011, Smedic Technology Co., Ltd. stands as a premier comprehensive solution provider specialized in environmental protection agents, integrating cutting-edge research and development, smart manufacturing, global sales channels, and dedicated engineering-related technical services.
We are passionately dedicated to supplying our global clientele with customized chemical products, customized technical solutions, and targeted services. Operating at a scale that spans municipal sewage networks, industrial wastewater, tap water purification plants, mineral processing agents, and oilfield chemicals, Smedic manages a comprehensive portfolio of more than 80 different environmental protection products. Our state-of-the-art facilities yield an annual production capacity exceeding 1 million tons, ensuring consistent, high-purity chemicals wherever they are needed.
Strategically positioned headquarters, production bases, and warehousing facilities designed to optimize transport times, lower costs, and ensure consistent supply chains.
Reverse Osmosis (RO) systems have emerged as the foundational pillar of global industrial purification, municipal desalination, and water reuse processes. However, as industries push recovery rates to the thermal limits, RO membranes face severe fouling from scale precipitation, colloidal matrices, bio-organic layers, and silica deposits. Traditional one-size-fits-all cleaning chemicals are no longer sufficient; modern plants require customized, target-specific clean-in-place (CIP) formulations to prevent irreversible flux loss and early membrane degradation.
"Information Gain Perspective: High recovery systems suffer from localized concentration polarization. Without precise chelation, dispersion, and surfactant action, standard cleaners can alter membrane polymers, causing irreversible deterioration of the polyamide thin-film composite layer."
The RO membrane chemical market is rapidly shifting toward sustainable, high-activity, low-dosage chemicals. Key trends driving this shift include:
International procurement managers consistently face challenges with chemical compatibility, dosage optimization, and transportation costs. Smedic addresses these challenges through comprehensive support services:
Buyers require clean-in-place (CIP) agents that quickly dissolve complex inorganic scales (such as metal oxides and calcium compounds) and break down stubborn bio-organic films. Chemical stability across varying source water compositions is essential.
Smedic provides customized chemical formulations tailored to local water quality data. Our regional warehousing network ensures consistent supply chains and reduces international transit costs, maintaining reliable inventory levels for large-scale operations.
We are proud to be recognized as a National High-tech Enterprise and a National Specialized, Refined, Unique and Innovative "Little Giant" Enterprise. Our focus on water chemistry has driven the development of an advanced R&D platform centered around one academy, three research institutes, and five specialized bases.
Collaborating with top academic institutions like Tsinghua University, Shandong University, Beijing University of Technology, Peking University, and Tianjin University, Smedic serves as a key commercialization partner for advanced industry-academia-research achievements.
Smedic has secured over sixty patents (including more than 40 invention patents) and led the drafting of over ten national standards for composite carbon sources, coagulants, and sodium acetate compounds.
A decade of continuous innovation and sustainable growth in the water treatment industry.
Our commitment to international quality standards, verified by comprehensive third-party testing.
From membrane cleaning to heavy metal removal, we provide comprehensive industrial solutions.
To meet the demands of modern water reclamation, Smedic is continuously advancing its chemical formulations toward high biodegradability and low toxicity. Our R&D efforts are focused on three main pillars:
Developing phosphorous-free antiscalants and biodegradable cleaners that maintain high performance without contributing to nutrient loading in sensitive receiving waters.
Combining enzymatic cleaners with mild surfactants to effectively break down tough extracellular polymeric substances (EPS) in biofilms without damaging membrane materials.
Answers to common troubleshooting questions from our global engineering teams.
High-purity organic silicone defoamers, carbon sources, and advanced metal precipitants.